Why do O 2 and CO 2 pass through the plasma membrane?

they are nonpolar and soluble
they are facilitated by protein
they are "pumped" through
they undergo pinocytosis

Answers

Answer 1
The answer is A) they are nonpolar and soluble. 

Related Questions

Through aquatic succession, a clear lake may eventually become

Answers

Answers;

Meadow

Through aquatic succession, a clear lake may eventually become meadow.

Explanation;Aquatic succession refers to the process by which a glacial lake dries up. Aquatic succession takes place as a result of disturbances which results in aquatic area filling with sediment or organic matter.During aquatic succession a series of stages that causes bodies of water to turn into simply land. The process of aquatic succession is also called hydrosere and hydrarch succession.Meadow is a field that is habited by grass and other non-woody plants.

Through aquatic succession, a clear lake may eventually become a marsh or a forested wetland.

Aquatic succession is a water body's steady ecological community and habitat change. A clean lake can change ecosystems over several succession stages.

Clear Water Stage: Early lakes have clear, nutrient-poor water. Algae and submerged aquatic plants are the principal producers.Emergent Plant Stage: As sediment and organic matter collect in the lake, reeds, cattails, and bulrushes can grow. These plants have sediment roots and water-surface stems.Shrub and Scrub Stage: As the lake fills with sediment, emerging plants establish habitats for willows and dogwoods. These plants can survive periodic flooding and grow near lakes.

Water chemistry, nutrient availability, and sediment deposition cause this progression from a clear lake to a marsh or wooded wetland. Adapting to shifting conditions, the new ecosystem supports a varied range of plants and animals.

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True or false, dr. jonas salk developed a vaccine for typhoid fever.

Answers

Hello there,
False. The British bacteriologist Almroth Edward Wright first developed an effective typhoid vaccine at the Army Medical School in Netley, Hampshire.

Hope this helps :))

~Top

Answer:

the answer is polio

Explanation:

just answered it

Compare and contrast the processes of passive transport (facilitated diffusion) and active transport.

Answers

passive transport moves ions from high concentration to low but active transport movies ions from low concentration to high
Final answer:

Passive transport, such as facilitated diffusion, and active transport are both essential for substance movement within cells, but they operate differently. Passive transport moves substances from high to low-concentration areas without energy requirements, while active transport moves substances from low to high-concentration areas, requiring energy.

Explanation:

The process of passive transport, such as facilitated diffusion, and active transport are both essential mechanisms through which substances move across cell membranes in organisms, but they operate differently.

Passive transport refers to the movement of substances from an area of higher concentration to an area of lower concentration, which requires no cellular energy. An example of this is facilitated diffusion, where carrier proteins in the cell membrane assist in the transport process.

In contrast, active transport moves substances from an area of lower concentration to an area of higher concentration, which goes against the concentration gradient and requires energy in the form of ATP. Proteins within the cell membrane act as 'pumps' to conduct this process. An example of active transport is the sodium-potassium pump wherein active transport is employed to pump sodium out of cells and potassium into cells.

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The nurse is caring for a client during the immediate postoperative period and is assessing for signs of shock. what signs and symptoms indicate that the client may be in shock?

Answers

High pulse tachycardia
Low blood pressure
02 sat drop
Work of breathing
Sweating
Hypovolemia
Hyperosmolar ketoacidosis
Confusion
High lactic acid
Altered mental status

Predict how many double helical molecules of dna will be present in the gametes of the fruit fly, drosophila, a diploid organism that has eight replicated chromosomes in each cell that enters meiosis.

Answers

The answer is a four double-helical molecules of DNA, which correspond to four unreplicated chromosomes. There will be four DNA molecules in to each gamete because the 8 replicated chromosomes in a diploid cell are compacted to 4 replicated chromosomes each cell at the closing of meiosis I. In meiosis II, the fellow chromatids of every replicated chromosome are disjointed. Each cell now comprises 4 unreplicated chromosomes, respectively with a single molecule of DNA. 

How does the absorption of ultraviolet radiation by the ozone layer help sustain life?

Answers

This process helps maintain the temperature of the Earth.
It keeps a low level of harmful ultraviolet radiation from reaching living organisms.
This process keeps ozone concentrations in the troposphere at lower levels.

(all of the above are true)
 
this helps you! :)

Answer:

D

Explanation:

HELP PLS
How does carbon move between the atmosphere, hydrosphere, biosphere, and geosphere?

Answers

The carbon cycle is the biogeochemical cycle by whichcarbon is exchanged among the biosphere, pedosphere, geosphere, hydrosphere, and atmosphere of the Earth.

The geosphere also plays a major role in the carbon cycle. Several processes move carbon from thegeosphere to the atmosphere. Volcanic eruptions release carbon dioxide from molten rock beneath the earth's surface. ... Burning fossil fuels like gasoline, diesel and coal releases carbon into the atmosphere.



Answer:

Carbon is an element and is part of the oceans, air, rocks, soils and living things, it does not stay in one place.

In the atmosphere, it combines with oxygen in a gas called carbon dioxide (CO2). With the help of the sun, through photosynthesis, carbon dioxide is extracted from the air and converted into food.

Through food chains, carbon from plants goes to the animals that feed on them. Animals that eat other animals also obtain carbon through their food.

When plants and animals die, their bodies, wood, and leaves decompose in the soil. Part of the decomposed matter is buried and after millions and millions of years, it becomes fossil fuel.

Each time you breathe out, carbon dioxide is released into the atmosphere. Animals and plants get rid of the gas through the process known as respiration.

The carbon from fossil fuels goes into the atmosphere when the fuel is burned. When humans burn fossil fuels to power their factories, power plants, cars, and trucks, most of the carbon quickly enters the atmosphere in the form of carbon dioxide gas. Every year, five and a half billion tons of carbon are released in the form of fossil fuels burned. Of the large amount of carbon released by fuels, only 3.3 billion tons penetrate the atmosphere, and most of the rest is dissolved in the seawater.

The oceans and other bodies of water absorb some of the carbon from the atmosphere. It dissolves in water. Marine animals use carbon to create the material for their skeletons and shells.

Carbon dioxide is a greenhouse gas that traps heat in the atmosphere.  When carbon is deposited on the seabed, it is stored outside the carbon cycle for long periods of time. The amount of limestone deposited in the ocean depends in some way on the amount of shallow, tropical and warm oceans on the planet, because that is where limestone-producing organisms, such as corals, proliferate. Carbon can be released back into the atmosphere if the limestone melts or undergoes metamorphosis in a subduction zone.

Cutting the left optic nerve in front of the optic chiasm would result in blindness in the ____.​

Answers

Cutting the left optic nerve in front of the optic chiasm would result in blindness in the left eye.

What was shown by both Redi’s and Pasteur’s experiments?

Answers

I shows that living things can only come from living things. 

Answer:

Their experiment showed that the flies did not come directly from meat but flies laid their eggs there (disprove the spontaneous generation).

Explanation:

Redi put meat in three different jars one jar with covering and another without covering and the 3rd jar was sealed. He disproved spontaneous generation theory in this experiment. He showed that maggots did not come directly to meat but came from eggs laid by flies The sealed jar had no maggots in the meat.

Pasteur also checks the spontaneous generation theory by putting the boiling broth in different flasks, some open and some sealed. The conclusion he drew from this is that living things did not come from broth directly.

Thus, their experiment showed that the flies did not come directly from meat but flies laid their eggs there (disprove the spontaneous generation).

Why don't we run out of the important gases that we need to stay alive?

Answers

Because as times goes on the atmosphere and plants produce more of the gases we need to stay alive. It is because that new gas is produced as a part of cycle, because plants recycle our waste gasses and replace them with the oxygen we need.

The reason why we don't run out of the important gases that we need to stay alive is due to existence of the natural recycling processes such as the carbon cycle and oxygen cycle makes use of gases produced by living organisms, which are carbon dioxide and oxygen to reproduce the gases used

The important gases we need to stay alive are;

Oxygen: Needed for aerobic respiration in the production of energy for life in animals and other living organisms, in the process, carbon dioxide is producedCarbon dioxide: Needed by plant to manufacture plant food which contains energy and oxygen is also produced as a by product, in the process known as photosynthesis. Sunlight energy is used to enable the process

The aerobic respiration and photosynthesis processes along with other natural occurring processes through which oxygen and carbon dioxide are produced  creates a cycle that sustains the gases that we need to stay alive so that they do not run out

The cycles are known as the carbon and oxygen cycles

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When a motor neuron and the skeletal muscle cell it innervates are at rest:?

Answers

Particularly the skeletal muscles at rest gain most of their energy from the aerobic respiration of fatty acids. Hence fatty acids provide the majority of the energy for muscle metabolism when a person is exercising at 25% of VO2max. However, the motor neuron is at rest when a neuron is not receiving any input there will be a potential difference. Thus, the potential difference measured when the neuron is inactive and it is caled the resting membrane potential. 

Final answer:

During rest, a motor neuron stops releasing ACh at the NMJ which leads to repolarization of the muscle fibre, calcium ions return to the SR, and the muscle relaxes as cross-bridge formation is inhibited.

Explanation:

When a motor neuron and the skeletal muscle cell it innervates are at rest, several processes take place to ensure the muscle fibre is relaxed. The motor neuron stops the release of the neurotransmitter acetylcholine (ACh) into the neuromuscular junction (NMJ). As a result, the muscle fibre repolarizes, closing the gates in the sarcoplasmic reticulum (SR) that had allowed calcium ions (Ca2+) to be released. The process of repolarization includes activating ATP-driven pumps that move the Ca2+ out of the sarcoplasm and back into the SR, leading to shielding of the actin-binding sites on the thin filaments. This prevents the formation of cross-bridges between the actin and myosin filaments, meaning that the muscle fibre loses its tension and relaxes, maintaining a state of muscle relaxation.

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The "command center" of fluid intake is located in the:

Answers

The “command center” of fluid intake is located in the hypothalamus. It is a part of the brain that comprises a number of small nuclei with different functions. It attaches the nervous system to the endocrine system by the use of the pituitary gland.

Final answer:

The 'command center' of fluid intake is located in the hypothalamus, a region of the brain responsible for regulating various bodily functions, including thirst and fluid balance.

Explanation:

The 'command center' of fluid intake is located in the hypothalamus, which is a small region of the brain. The hypothalamus is responsible for regulating various bodily functions, including thirst and fluid balance.

When the body becomes dehydrated, specialized cells in the hypothalamus detect this and trigger the sensation of thirst. This prompts the individual to drink fluids to replenish the water that has been lost.

In addition to regulating thirst, the hypothalamus also interacts with the kidneys to control the excretion of water and electrolytes, ensuring proper fluid balance in the body.

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What process is happening to the root so that they grow deeper into the ground

Answers

the ground is getting energy for the sun which makes the root grow deep and they breaking into the soldi

The process of cell division (growth) is happening to the root so that they grow deeper into the ground.

CELL DIVISION:

Cell division is the process by which a cell makes double copy of itself. Cell division multiplies or increases the number of cells.

This means that when a cell divides, growth visible by elongation occurs.

According to this question, a root grows deeper into the ground in search of water for the plant. The process of cell division is making the root of this plant grow, hence, elongating deeper into the ground.

Therefore, the process of cell division (growth) is happening to the root so that they grow deeper into the ground.

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what is the difference between mitosis and cytokinesis? which one has to occur first? why?

Answers

Both Mitosis and Cytokinesis are a part of cell division. Basically, Mitosis is a process by which the duplicated genome in a cell is separated into halves that are identical in nature. Cytokinesis is the process where the cytoplasm of the cell divides to form two 'daughter' cells.

During mitosis, when the nucleus divides, the two chromatids that make up each chromosome separate from each other and move to opposite poles of the cell. Which allows cytokinesis to take place. 


Final answer:

Mitosis is the division of the nucleus and its content, while cytokinesis is the division of the cell’s cytoplasm and the rest of the cellular organelles. Mitosis occurs first, ensuring each daughter cell gets an accurate copy of the genetic information before the cell itself divides during cytokinesis.

Explanation:

Mitosis and cytokinesis are two stages of the cell division process. Mitosis involves the splitting of the nucleus and its content. It's the stage where one cell's DNA is divided evenly into two cells. On the other hand, cytokinesis is the division of the cell's cytoplasm and the rest of the cellular organelles. During cytokinesis, the cell itself gets divided into two daughter cells, ultimately forming two independent cells.

In terms of which occurs first, mitosis happens before cytokinesis. This is because the cell needs to first divide its genetic material (during mitosis) before it can divide its cytoplasm and other parts (during cytokinesis). Ensuring that each daughter cell gets an accurate copy of the genetic information is crucial for the proper functioning of cells, hence the order of these stages.

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A client reports painless, bright-red vaginal bleeding during the second trimester of pregnancy. upon assessment, the nurse finds that the client's urine output has decreased, the fundal height has increased, and the uterus is nontender with normal tone. what does the nurse interpret from these findings?

Answers

The interpretation of findings based on the assessments performed by the nurse is that the patient is diagnosed with Placenta Previa. It is a case wherein the placenta is improperly entrenched in the lower uterine segment adjacent to the internal cervical operating system. 

A scientist is trying to determine where fault lines are to assess the risk of earthquakes and volcanic activity in an area. Which tool will be the most helpful to him?

a topographic map
a geologic map
a radiation detector
a density meter

i need help asap please!?!?!

Answers

THE ANSWER IS B. GEOLOGIC MAPS!!! POSITIVE

Answer:

The correct answer is a geologic map.

Explanation:

Geologic maps are primarily used to resolve the concerns involving Earth menaces, resources, and environments. The geologic maps demonstrate the scattering of distinct kinds of rock and the surficial deposits, as well as the locations of the geologic features like folds and faults.  

The geologic maps are in the real sense a four-dimensional data system, and due to its unique characteristics it plays an essential role in evaluating the natural hazards like earthquakes and volcanic eruptions in a particular region and environmental or socioeconomic threat.  

what the food polymer used to form new body polymer

Answers

The answer to this question would be: protein

There are 3 major macromolecules that are found in food: carbohydrate, lipid, and protein. The molecule that is used to made body cells is mostly amino acids. Protein is the polymer form of the amino acid which mean protein was made from multiple amino acids. When digested, protein will be cut into smaller amino acids.

In order for an inherited genetic mutation to result in a phenotypic change for a recessive trait, which of the following must occur? The mutation must be inherited from the father. The mutation must be inherited from the mother. The mutation must be inherited on the x chromosome. The mutation must be inherited by both parents.

Answers

In order for an inherited genetic mutation to result in a phenotypic change for a recessive trait the mutation must be inherited by both parents.
A group is recessive if a person needs two O alleles to have the blood group O.
Dominant inheritance on the other hand is when one allele of a gene is dominant within the pair.

In order for an inherited genetic mutation to result in a phenotypic change for a recessive trait, mutation must be inherited by both parents. The correct option is D.

What is recessive trait?

A trait that must be made a significant contribution through both parents in order to be present in the offspring. Recessive traits can exist in a person's genes but not manifest in that person.

The dominant trait is the trait that once makes it appear or is noticeably expressed in the organism. The recessive trait is one that is present at the gene level but is masked and does not manifest itself in the organism.

An autosomal recessive disorder is caused by the inheritance of two changed genes (mutations), one from each parent. These disorders are typically passed down through two carriers.

Thus, the correct option is D.

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Special senses, such as sight and sound, are detected by:

Answers

The special senses of sight and sound are detected by, special cells that transduce stimuli into electrical signals. In the visual system, sensory cells in the retina convert the physical energy of light signals into electrical impulses that travel to the brain.

"The correct answer is: Special senses, such as sight and sound, are detected by sensory receptors.

Sensory receptors are specialized cells or structures that respond to specific types of stimuli in the environment. These receptors are the first step in the process of sensory perception. For example, photoreceptor cells in the retina of the eye detect light, while hair cells in the inner ear detect sound vibrations. These sensory receptors convert the stimuli into electrical signals that are then transmitted to the brain via sensory neurons. The brain interprets these signals, allowing us to experience sensations such as sight and sound. The process by which sensory receptors convert stimuli into electrical signals is known as sensory transduction. Each type of sensory receptor is tuned to specific types of physical or chemical stimuli, ensuring that the nervous system can accurately detect and respond to changes in the internal and external environment."

Conservationists establish that the carrying capacity of a population of deer in an extensive geographical area is 945. The current population of deer is 1,100. What is likely to happen to the population of deer?

A.The growth pattern will change from logistic to exponential.
B.The minimal viable population for the deer will increase.
C.Deer from other populations will immigrate to find mates to reproduce successfully.
D.The population will remain healthy, and its numbers will increase.
The population size will drop until the numbers reach the carrying capacity.

Answers

The correct option is E.
The carrying capacity of a biological specie in an ecosystem refers to the maximum population size of the specie that the environment can sustain indefinitely given all the resources that are available in the environment. When the number of living organism in an ecosystem is above the carrying capacity, the number of death among the specie will increase until the carrying capacity is reached. 

Answer: E. The population size will drop until the numbers reach the carrying capacity.

A carrying capacity of the ecosystem is the number of individuals in the population of species a ecosystem can sustain on the basis of availability of resources (food, shelter). Conservationists established that the carrying capacity of a population of deer in an extensive geographical area is 945 which increased to 1,100. This sudden increase in the population of deer, will result in depletion of resources, hence, carrying capacity of the ecosystem cannot sustain increased members of the population. Therefore, the population size will drop until the numbers reach the carrying capacity.

What parts of the integumentary system are made up of dead epidermal cells?

Answers

Skin. 

Hope this helps! 

In Mendel's experiment with round- and wrinkled-seed plants, the F1 plants, which produced only round seeds, were grown up andmatured and were allowed to self-fertilize. What was the ratio of round to wrinkled seeds in the F2 generation?

Answers

In Mendel's experiment with round- and wrinkled-seed plants, the ratio of round to wrinkled seeds in the F2 generation was 3:1. In other words, 75% of the seeds were round and the remaining 25% of the seeds were wrinkled.
Final answer:

The ratio of round to wrinkled seeds in Mendel's experiment was 3:1 in the F2 generation.

Explanation:

In Mendel's experiment, when the F1 plants, which produced only round seeds, were allowed to self-fertilize, the ratio of round to wrinkled seeds in the F2 generation was 3:1.

This means that in a large population of F2 offspring chosen at random, approximately 75 percent would be expected to have round seeds, while 25 percent would be expected to have wrinkled seeds.

This ratio demonstrates Mendel's observation of the dominant and recessive traits in his experiment.

Traditionally female-dominated occupations, such as nursing and teaching, are known as

Answers

The answer is traditional gender roles, it is because if this has been promoted, the female gender will likely choose occupations that are more suitable for them and that are more feminine as traditional gender roles is a kind of gender stereotyping of where a gender should act more like a girl when she is a female in gender.

Cells from advanced malignant tumors often have very abnormal chromosomes as well as an abnormal number of chromosomes. what might explain the association between malignant tumors and chromosomal abnormalities?

Answers

The advanced malignant tumors are often associated with abnormal chromosomes and abnormal number of chromosome which results to the association between chromosomal abnormalities and malignant tumors. This association best explains with the reason that cell cycle checkpoints are not in place which cannot stop the cells with chromosome abnormalities.



Radar uses reflected microwaves to detect objects and measure their...
A distance and speed
B weight and volume
C wavelength and frequency
D height and depth

Answers

Radar uses reflected microwaves to detect objects and measure their distance and speed.
Final answer:

Radar uses reflected microwaves to detect objects and calculate their distance and speed by measuring the time it takes for a signal to bounce back and observing changes due to the Doppler effect.

Explanation:

Radar, an acronym for Radio Detection and Ranging, uses reflected microwaves to detect objects and measure their distance and speed (Option A). This technology works by sending out a microwave signal to an object and then measuring the time it takes for the signal to bounce back.

This allows the radar system to calculate the distance of the object. If the object is moving, the frequency of the reflected signal will change due to the Doppler effect, giving the system the ability to determine the object's speed.Additionally, by analyzing the frequency shift of the reflected microwaves, the radar system can determine the speed of the object.

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What is different about the mouth structure of ruminants compared to that of humans?

Answers

When a human eats we rely heavily on our front teeth to tear, our molars to grind and chew, our mandible to aid this and our tongue to move food from the front of our mouths to the back to prepare it to be swallowed. A ruminant relys heavily on their lips to grasp food and their front teeth which humans do not, we rarely use our lips to aid in the eating process.

which of these is a type of mass movement that is likely to happen after a large amount of rain?

A. Landslide
B. Soil Creep
C. Liquefaction
D. Elastic rebound

Answers

I believe it is A, landslide.

Answer:

A. Landslide

Explanation:

The landslide can be defined as the movement of the mass of land/ rock/ mountain down the slope. The rain can cause water retention in the soil and may result in decreasing the rigidity of the soil. The decrease in the rigidity of the soil may cause the separation of the land particle and result in landslide.

Which condition results from a potentially lethal blood alcohol concentration that inhibits the brain's ability to control vital body functions?

Answers

Alcohol poisoning occurs when the concentration of alcohol in the blood inhibits the brain's ability to control basic body functions. Alcohol affects the neurotransmitters in the brain and can also reduce the size of brain cells long term.

What is the difference between casual observers and scientific observers?

Answers

There are different types of observers. Casual observers differ from scientific observer. Seeing and observing are two different things. Not that everybody seeing is actually observing the thing.
A casual observer just sits back and watch for something to happen while a scientific observer comes up with some hypothesis to work on it. 
Observation is a central theme of scientific investigation. Scientists are usually expert observers, who have sharpened their senses when it comes to observing the external world and its phenomenon. The principal difference between a scientist and a casual observer is that the scientist ponder on his observation and analyse it critically to get more insight and information and the observation may lead to a totally new experimental project. While a causal observer will just observe and move on.

If DNA can’t leave the nucleus, how dose the DNA instructions get to the ribosomes in the cytoplasm

Answers

Final answer:

DNA instructions are conveyed to the cytoplasmic ribosomes by mRNA, which is synthesized in the nucleus through transcription. mRNA then exits the nucleus to enable protein synthesis by the ribosomes. This process is essential to the central dogma of molecular biology.

Explanation:

The genetic instructions housed within DNA in the nucleus are transferred to the ribosomes in the cytoplasm through the process of transcription and translation. During transcription, an intermediate molecule called messenger RNA (mRNA) is synthesized based on the DNA template. This mRNA molecule is small enough to travel through the nuclear pores into the cytoplasm where ribosomes read its sequence to synthesize proteins.

The nucleolus is responsible for the synthesis of ribosomal RNA (rRNA), which is then assembled with proteins to form the subunits of ribosomes. These subunits exit the nucleus to participate in protein synthesis in the cytoplasm.

Overall, the flow of genetic information in a eukaryotic cell goes from DNA to RNA (specifically mRNA) and finally to protein, abiding by the central dogma of molecular biology.

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